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首页> 外文期刊>Journal of Veterinary Internal Medicine >Optimal testing for thyroid hormone concentration after treatment with methimazole in healthy and hyperthyroid cats
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Optimal testing for thyroid hormone concentration after treatment with methimazole in healthy and hyperthyroid cats

机译:甲巯咪唑治疗健康和甲状腺功能亢进的猫后甲状腺激素浓度的最佳测试

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BACKGROUND: Methimazole suppresses thyroid hormone synthesis and is commonly used to treat feline hyperthyroidism. The degree of variation in thyroid hormone concentrations 24 hours after administration of methimazole and optimal time for blood sampling to monitor therapeutic efficacy have not been determined. OBJECTIVE: To assess thyroid hormone concentration variation in serum of normal and hyperthyroid cats after administration of methimazole. ANIMALS: Four healthy cats and 889 retrospectively acquired feline thyroid hormone profiles. METHODS: Crossover and retrospective studies. In the crossover study, healthy cats were treated with increasing doses of oral methimazole until steady state of thyroid suppression was achieved. Thyroid hormones and thyroid stimulating hormone (TSH) were serially and randomly monitored after methimazole. Paired t-tests and a 3-factor analysis of variance were used to determine differences between thyroid hormone concentrations in treated and untreated cats in the crossover study. Thyroid profiles from methimazole-treated hyperthyroid cats were retrieved from the Diagnostic Center for Population and Animal Health database and reviewed. Linear regression analysis evaluated relationships of dosage (mg/kg), dosing interval (q24h versus q12h), and time after methimazole to all thyroid hormone concentrations. RESULTS: All serum concentrations of thyroid hormones were significantly suppressed and TSH was significantly increased for 24 hours after administration of oral methimazole in healthy cats (P < .005). In hyperthyroid cats, there were no significant relationships between thyroid hormone concentrations and time postpill or dosing interval. CONCLUSIONS: Timing of blood sampling after oral methimazole administration does not appear to be a significant factor when assessing response to methimazole treatment.
机译:背景:甲噻唑抑制甲状腺激素的合成,通常用于治疗猫甲亢。尚未确定在服用甲巯咪唑24小时后甲状腺激素浓度的变化程度以及用于监测治疗效果的最佳血液采样时间。目的:评估服用甲巯咪唑后正常和甲状腺功能亢进猫的血清中甲状腺激素浓度的变化。动物:四只健康的猫和889个回顾性获得的猫甲状腺激素谱。方法:交叉和回顾性研究。在交叉研究中,对健康的猫用增加剂量的口服甲他唑治疗,直至达到甲状腺抑制的稳定状态。甲巯咪唑治疗后,连续随机监测甲状腺激素和甲状腺刺激激素(TSH)。在交叉研究中,使用配对的t检验和三因素方差分析来确定治疗和未治疗的猫中甲状腺激素浓度之间的差异。从人口与动物健康诊断中心的数据库中检索了甲硫咪唑治疗的甲亢猫的甲状腺特征,并进行了审查。线性回归分析评估了剂量(mg / kg),给药间隔(q24h与q12h)以及甲巯咪唑治疗后所有甲状腺激素浓度之间的关系。结果:在健康猫中口服甲他唑后24小时,所有血清甲状腺激素的浓度均被显着抑制,TSH​​显着升高(P <.005)。在甲状腺功能亢进的猫中,甲状腺激素浓度与服药后或服药间隔时间之间无显着关系。结论:在评估对甲巯咪唑治疗的反应时,口服甲乙咪唑后采血的时间似乎不是一个重要因素。

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